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121.
Differential loss of cellular constituents in cytocentrifuge preparations   总被引:1,自引:0,他引:1  
  相似文献   
122.
Growth of the bacterial cell   总被引:56,自引:0,他引:56  
W D Donachie  K J Begg 《Nature》1970,227(5264):1220-1224
  相似文献   
123.
RNA synthesis during early development of the mouse   总被引:5,自引:0,他引:5  
H R Woodland  C F Graham 《Nature》1969,221(5178):327-332
  相似文献   
124.
Abnormal electroretinogram from a Drosophila mutant   总被引:21,自引:0,他引:21  
D J Cosens  A Manning 《Nature》1969,224(5216):285-287
  相似文献   
125.
Vertebrate blood oxygen capacity and body weight   总被引:1,自引:0,他引:1  
J D Burke 《Nature》1966,212(5057):46-48
  相似文献   
126.
Genetics of the alkaline phosphatase polymorphism of the human placenta   总被引:27,自引:0,他引:27  
E B Robson  H Harris 《Nature》1965,207(5003):1257-1259
  相似文献   
127.
A deficiency of the homeotic complex of the beetle Tribolium   总被引:10,自引:0,他引:10  
Stuart JJ  Brown SJ  Beeman RW  Denell RE 《Nature》1991,350(6313):72-74
In Drosophila, the establishment of regional commitments along most of the anterior/posterior axis of the developing embryo depends on two clusters of homeotic genes: the Antennapedia complex (ANT-C) and the bithorax complex (BX-C). The red flour beetle has a single complex (HOM-C) representing the homologues of the ANT-C and BX-C in juxtaposition. Beetles trans-heterozygous for two particular HOM-C mutations spontaneously generate a large deficiency, presumably by an exchange within the common region of two overlapping inversions. Genetic and molecular results indicate that this deficiency spans at least the interval between the Deformed and abdominal-A homologues. In deficiency homozygous embryos, all gnathal, thoracic and abdominal segments develop antennal appendages, suggesting that a gene(s) has been deleted that acts to distinguish trunk from head. There is no evidence that beetles have a homologue of the segmentation gene fushi tarazu of similar genomic location and function. On the basis of the genetic tractability, convenient genome size and organization of Tribolium, and its relatively long phylogenetic divergence from Drosophila (>300 million years), we have integrated developmental genetic and molecular analyses of the HOM-C. We isolated about 70 mutations in the complex representing at least six complementation groups. The homeotic phenotypes of adults and lethal embryos lead us to believe that these beetle genes are homologous with the Drosophila genes indicated in Fig. 1 (see text).  相似文献   
128.
Effects of a change in the level of inbreeding on the genetic load   总被引:10,自引:0,他引:10  
S C Barrett  D Charlesworth 《Nature》1991,352(6335):522-524
"The effects of inbreeding may not be as noticeable in the first generation as the invigoration immediately apparent after crossing". This statement, published in 1919, has received little attention, and has apparently never been tested empirically, although the reduction of the genetic load of populations by inbreeding is well known in theoretical terms. Because inbreeding increases homozygosity, and hence the effectiveness of selection against recessive or partially recessive detrimental alleles, changes in levels of inbreeding can lead to a reduction in the frequencies of such mutant alleles. This results in equilibration at higher population mean fitness and is referred to as 'purging' populations of their genetic load. Severe inbreeding can also reduce genetic load due to overdominant alleles, provided selection coefficients are not symmetrical at all loci, because alleles giving lower fitness will be reduced in frequency at equilibrium. With either fitness model, however, reduction in genetic load takes time, and the initial effect of an increase in inbreeding is reduced fitness due to homozygosity. There are few data relating to the extent to which fitness is reduced during inbreeding in a set of lines and to how long the reduction lasts before increasing again to the initial level, or higher. Inbreeding experiments involving sib mating in mice and Drosophila subobscura, and successive bottlenecks in house flies have yielded some evidence consistent with the purging hypothesis. Here, we report results of an experiment demonstrating a prolonged time-course of recovery of mean fitness under self-fertilization of a naturally outcrossing plant, and also compare our results with expectations derived by computer calculations. Our results show that the genetic load present in an outcrossing population can be explained only with a high mutation rate to partially recessive deleterious alleles, and that inbreeding purges the population of mutant alleles.  相似文献   
129.
130.
Summary Gigantecin (I), a novel tetrahydroxy-di-tetrahydrofuran fatty acid -lactone (acetogenin), was isolated from an ethanolic extract of the stem bark ofGoniothalamus giganteus Hook. f., Thomas (Annonaceae), by means of activity-directed fractionation (brine shrimp lethality test). This new compound is extremely cytotoxic to human tumor cells, inhibits crown gall tumors on potato discs, and is active in an assay designed to detect antimitotic agents (9 ASK).  相似文献   
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